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Wachsmuth, Ipke; Becker, Jerry P. – Journal of Mathematical Behavior, 1986
The discussions of the theme group on Technology and Cognitive Development at the Fifth International Congress on Mathematical Education are summarized. How computers can be used to engage students actively, to promote problem-solving skills, and to achieve better understanding is discussed. (MNS)
Descriptors: Cognitive Development, Computer Oriented Programs, Concept Formation, Educational Change
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Sigurdson, Sol E.; Olson, Alton T. – Journal of Mathematical Behavior, 1992
A year-long study in 40 eighth grade mathematics classrooms compared the effect on student achievement of teaching with meaning with algorithmic-practice teaching. In general, teaching with meaning was found to increase student achievement. However, differences in response to the methods was seen in the top, middle, and lower thirds of the…
Descriptors: Cognitive Development, Concept Formation, Grade 8, Mathematical Applications
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Zvonkin, Alexander – Journal of Mathematical Behavior, 1992
Discusses the first session and events from other sessions of a mathematics circle consisting of the author and four preschool children. Presents discussions that ensued with the children when asked to solve problems related to Piaget's stages of cognitive development. (MDH)
Descriptors: Arithmetic, Cognitive Development, Cognitive Processes, Developmental Stages
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Watson, Jane M.; And Others – Journal of Mathematical Behavior, 1993
Responses of students in grades K-10 (42 interviewed; 98 written) to 4 common fractions problems were analyzed for iconic mode processes in relationship to concrete symbolic mode development. Concludes that progress in the latter, without development of complementary iconic support, limits both understanding and flexibility in solving problems.…
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Elementary School Students
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Davis, Robert B. – Journal of Mathematical Behavior, 1992
Discusses a new approach to mathematics education that moves away from methods that tell students what to do and toward methods that help students build mental representations of mathematical concepts. Contrasts the previous and emerging views and examines aspects of the new approach. (26 references) (MDH)
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Structures, Educational Change
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Maher, Carolyn A.; And Others – Journal of Mathematical Behavior, 1991
A longitudinal study followed Brian from grade five through grade seven to examine his representation and development of mathematical knowledge. Some observations over the four years were that Brian liked to figure things out, responded poorly to suggestions not fitting the representation he constructed, and changed attitudes from purposeful and…
Descriptors: Attitude Change, Cognitive Development, Cognitive Processes, Concept Formation
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Connel, Michael L.; Peck, Donald M. – Journal of Mathematical Behavior, 1993
Reports results from a project designed to bring about student conceptual change by using multiple modeling and representation as well as links to other areas. Students developed rules as conveniences and meanings for symbols, were active in learning, made interpretations, and had confidence in their thinking. (MKR)
Descriptors: Cognitive Development, Cognitive Structures, Cognitive Style, Elementary Education